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A Practical Dynamic Frequency Scaling Solution to DPM in Embedded Linux Systems

机译:嵌入式Linux系统中DPM的实用动态频率缩放解决方案

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—Traditional power management enables CPU to switch among different power consumption modes such as running, idle and standby to save energy to a certain degree. In battery-powered embedded Linux systems, power management plays an even more important role than in desktops. This paper proposes a practical solution to dynamic power management (DPM) based on dynamic frequency scaling (DFS). According to the system workload, it switches the working frequency among several predefined settings. This paper presents a design and implementation of the solution in an embedded Linux system. Experimental results on an Intel PXA250-based system have demonstrated that the system running a DPM-enabled Linux can save up to 44% of execution time with less than 8% extra power consumption in an email application.
机译:- 传统电源管理使CPU能够在不同的功耗模式之间切换,例如运行,空闲和待机,以节省能量到一定程度。在电池供电的嵌入式Linux系统中,电源管理比桌面扮演更重要的角色。本文提出了基于动态频率缩放(DFS)的动态电源管理(DPM)的实用解决方案。根据系统工作负载,它会在几个预定义设置之间切换工作频率。本文介绍了嵌入式Linux系统中解决方案的设计和实现。基于英特尔PXA250的系统的实验结果表明,运行DPM的Linux的系统可以节省高达44%的执行时间,在电子邮件应用中额外的功耗低于8%。

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